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Tribological characteristics of sustainable fibre reinforced thermoplastic composites under wet adhesive wear

机译:湿胶磨损下可持续纤维增强热塑性复合材料的摩擦学特性

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摘要

Friction and specific wear rate of sustainable kenaf fibre reinforced polyurethane composite were investigated against stainless steel counterface and under wet contact conditions. The new composites were evaluated at different applied loads (50 - 80 N), sliding distances (up to 2.7 km) and fibre mat orientations. Scanning Electron microscopy (SEM) was used to observe the damage features on the worn surfaces. The results revealed that sustainable kenaf fibres assisted to enhance the wear and the frictional performance of the polyurethane thermoplastic composite by about 59%, and 90% respectively. Operating parameters and mat orientation controlled the wear and the frictional behaviour of the composite. Better wear performance was exhibited at high loads and when the fibre mats were oriented perpendicularly to sliding direction. The observations on worn surfaces revealed different features of damage such as micro-cracks, tearing of fibre, fibre detachment and delamination. However, there was no trace of fibre pull-out at all the tested conditions.
机译:研究了可持续的洋麻纤维增强聚氨酯复合材料在不锈钢表面和湿接触条件下的摩擦力和比磨损率。在不同的施加载荷(50-80 N),滑动距离(最大2.7 km)和纤维毡取向方面评估了新的复合材料。使用扫描电子显微镜(SEM)观察磨损表面的损伤特征。结果表明,可持续的洋麻纤维有助于将聚氨酯热塑性复合材料的磨损和摩擦性能分别提高约59%和90%。操作参数和垫子取向控制复合材料的磨损和摩擦性能。当纤维垫垂直于滑动方向取向时,在高负载下表现出更好的耐磨性能。在磨损表面上的观察显示出不同的损坏特征,例如微裂纹,纤维撕裂,纤维分离和分层。但是,在所有测试条件下都没有丝线拉出的痕迹。

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